Publication | Open Access
Navigating the landscape of RNA delivery systems in cardiovascular disease therapeutics
37
Citations
161
References
2024
Year
EngineeringCardiovascular Disease TherapeuticsGene DeliveryBiomedical EngineeringTherapeuticsCardiovascular DiseasesNanomedicineDelivery SystemsAntisense TherapyNovel TherapyCell-based Drug DeliveryCvds TreatmentRna BiologyVascular BiologyGene ExpressionCell BiologyBiomolecular EngineeringRna Delivery SystemsDrug Delivery SystemsGene VectorSmall RnaSystems BiologyMedicineGenome EditingNon-coding Rna
Cardiovascular diseases (CVDs) stand as the leading cause of death worldwide, posing a significant global health challenge. Consequently, the development of innovative therapeutic strategies to enhance CVDs treatment is imperative. RNA-based therapies, encompassing non-coding RNAs, mRNA, aptamers, and CRISPR/Cas9 technology, have emerged as promising tools for addressing CVDs. However, inherent challenges associated with RNA, such as poor cellular uptake, susceptibility to RNase degradation, and capture by the reticuloendothelial system, underscore the necessity of combining these therapies with effective drug delivery systems. Various non-viral delivery systems, including extracellular vesicles, lipid-based carriers, polymeric and inorganic nanoparticles, as well as hydrogels, have shown promise in enhancing the efficacy of RNA therapeutics. In this review, we offer an overview of the most relevant RNA-based therapeutic strategies explored for addressing CVDs and emphasize the pivotal role of delivery systems in augmenting their effectiveness. Additionally, we discuss the current status of these therapies and the challenges that hinder their clinical translation.
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